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Electrochemical Selective C2-H Hydroxymethylation of Pyridines via a Zinc Single-Atom Cathode and Anodic Iodide
Xiaodong Liu1, Mao-Rui Wang1, Yongle Chen1
1State Key Laboratory for Chemistry and Molecular Engineering of Medicinal Resources, Key Laboratory for Chemistry and Molecular Engineering of Medicinal Resources (Ministry of Education of China), Collaborative Innovation Center for Guangxi Ethnic Medicine, School of Chemistry and Pharmaceutical Sciences, Guangxi Normal University, Guilin541004, China.
Abstract:
Pyridines are ubiquitous scaffolds in pharmaceutical chemistry and appear in approximately 90% of pyridine-derived drugs as C2-substituted motifs. Nevertheless, direct C-H bond molecular editing remains limited by stringent reaction conditions and low metal atom efficiency. Here, we report the first site-selective aryl-substituted 2-hydroxymethylation at the C2 position of pyridines, enabled by relay mediation between a single-atom zinc-modified cathode and iodide ions. The protocol shows broad substrate tolerance, low metal loading, operational simplicity, negligible overpotential, and high regioselectivity. Direct molecular modification of drugs is achieved, and gram-scale synthesis of Bisacodyl is demonstrated. Mechanistic studies indicate that anodic iodide oxidation suppresses the intrinsic C4 reactivity preference of pyridine radicals. Coupled with a relay sequence comprising adsorption, activation, electroreduction, coupling, and electrooxidation, this effect enables efficient formation of the target products. By integrating single-atom catalysis with relay paired electrolysis, this work provides a new framework for the electrocatalytic transformation of inert chemical bonds.
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